IP Library Granted Patent US 10,524,329
Granted Patent B2
US 10,524,329 · App. 16/464,853 · Granted Dec 31, 2019

Apparatus for generating PWM signal and apparatus for controlling light having the same

Inventor: Kyu Won Cho (Gyeonggi-do, KR)
Assignee: FEELUX CO., LTD.
H05B37/0209H03K4/08H03K7/08
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Quick Facts
Patent No.
US 10,524,329
App. No.
16/464,853
Granted
Dec 31, 2019
Kind
B2
Abstract

A pulse width modulation (PWM) signal generator according to one embodiment of the present invention includes a first comparison unit for comparing a duty value being inputted with a reference wave being inputted to output a first PWM signal, a signal inversion unit for inverting the duty value being inputted on the basis of a maximum value of the reference wave, a second comparison unit for comparing the duty value inverted by the signal inversion unit with the reference wave being inputted to output a second PWM signal, and a reference wave generator for generating a reference wave to transmit the same to each of the first comparison unit and the second comparison unit.

Claims (30)

1. A pulse width modulation (PWM) signal generator comprising:

a first comparison unit configured to compare an input duty value to an input reference wave and output a first PWM signal;

a signal inversion unit configured to invert the input duty value on the basis of a maximum value of the reference wave;

a second comparison unit configured to compare the duty value inverted by the signal inversion unit to the input reference wave and output a second PWM signal; and

a reference wave generator configured to generate the reference wave and transfer the reference wave to the first comparison unit and the second comparison unit,

wherein the signal inversion unit subtracts the input duty value from the maximum value of the reference wave in order to invert the input duty value.

2. The PWM signal generator of claim 1 , wherein the reference wave is a sawtooth wave or a triangle wave; and

the first comparison unit outputs a high signal while the reference wave has a value less than or equal to the input duty value and outputs a low signal while the reference wave has a value exceeding the input duty value, thereby generating the first PWM signal.

3. The PWM signal generator of claim 1 , wherein the reference wave is a sawtooth wave or a triangle wave; and

the second comparison unit outputs a low signal while the reference wave has a value less than or equal to the inverted duty value and outputs a high signal while the reference wave has a value exceeding the inverted duty value, thereby generating the second PWM signal.

4. A pulse width modulation (PWM) signal generator comprising:

a first comparison unit configured to compare an input first duty value to an input reference wave and output a first PWM signal;

a signal inversion unit configured to invert a second duty value different from the first duty value on the basis of a maximum value of the reference wave;

a second comparison unit configured to compare the second duty value inverted by the signal inversion unit to the input reference wave and output a second PWM signal; and

a reference wave generator configured to generate the reference wave and transfer the reference wave to the first comparison unit and the second comparison unit,

wherein the signal inversion unit subtracts the second duty value from the maximum value of the reference wave in order to invert the second duty value.

5. The PWM signal generator of claim 4 , wherein the reference wave is a sawtooth wave or a triangle wave; and

the first comparison unit outputs a high signal while the reference wave has a value less than or equal to the input first duty value and outputs a low signal while the reference wave has a value exceeding the input first duty value, thereby generating the first PWM signal.

6. The PWM signal generator of claim 4 , wherein the reference wave is a sawtooth wave or a triangle wave; and

the second comparison unit outputs a low signal while the reference wave has a value less than or equal to the inverted second duty value and outputs a high signal while the reference wave has a value exceeding the inverted second duty value, thereby generating the second PWM signal.

7. A lighting control apparatus comprising:

a power supply unit configured to supply power;

a pulse width modulation (PWM) signal generator in claim 1 ;

a first light driving unit configured to supply the power of the power supply unit to a first light according to a first PWM signal generated by the PWM signal generator; and

a second light driving unit configured to supply the power of the power supply unit to a second light according to a second PWM signal generated by the PWM signal generator.

8. A lighting control apparatus comprising:

a power supply unit configured to supply power;

a pulse width modulation (PWM) signal generator in claim 4 ;

a first light driving unit configured to supply the power of the power supply unit to a first light according to a first PWM signal generated by the PWM signal generator; and

a second light driving unit configured to supply the power of the power supply unit to a second light according to a second PWM signal generated by the PWM signal generator.

Assignments (2)
CHANGE OF NAME Recorded Jul 16, 2021
From: FEELUX CO., LTD.
To: KH FEELUX CO., LTD.
Reel/Frame 056897/0241 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2019
From: CHO, KYU WON
To: FEELUX CO., LTD.
Reel/Frame 049306/0307 →
Priority Claims (1)
KR 10-2016-0179133 · Dec 26, 2016 · national
Continuity (1)
Related Publication 20190350064A1 · Nov 14, 2019